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往复式空气压缩机气阀节能技术研究
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作者 侯聪 刘波 《中文科技期刊数据库(引文版)工程技术》 2024年第10期0049-0052,共4页
往复式空气压缩机的能耗受诸多因素影响,其中气阀效率对其影响尤为显著。为探究影响气阀效率的因素以及气阀的优化方法,简述了压缩机和气阀结构原理,分析了弹簧力、阀片、通流面积、压力损失和泄露对能耗的影响,并总结了当下社会所采用... 往复式空气压缩机的能耗受诸多因素影响,其中气阀效率对其影响尤为显著。为探究影响气阀效率的因素以及气阀的优化方法,简述了压缩机和气阀结构原理,分析了弹簧力、阀片、通流面积、压力损失和泄露对能耗的影响,并总结了当下社会所采用的主要气阀节能技术。最后,探讨了气阀优化还存在的问题和未来气阀优化的发展方向,此研究对减少压缩机能耗有重要意义。 展开更多
关键词 往复空气压缩机 气阀 弹簧力 通流面积 压力损失 气阀泄露 节能技术
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Numerical and experimental investigation of leakage behavior at null position of high-pressure electro-pneumatic servo valve 被引量:2
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作者 ZHANG Di-jia GAO Long-long +2 位作者 WU Chuan ZHAO Zhi-xin LI Bao-ren 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第10期3117-3126,共10页
The high-pressure electro-pneumatic servo valve(HESV)is a core element of the high-pressure pneumatic servo system.The annular clearance and the rounded corner of the spool-sleeve can cause the leakage at null positio... The high-pressure electro-pneumatic servo valve(HESV)is a core element of the high-pressure pneumatic servo system.The annular clearance and the rounded corner of the spool-sleeve can cause the leakage at null position,thereby affecting high-precision control and stability of the servo system.This paper investigates the effects of the clearance structure on leakage behavior at null position of the HESV.A numerical approach was employed to evaluate the effects,and then a mathematical model was established to obtain the variation law of leakage flow rate at null position.The results indicate that the leakage flow rate at null position varies linearly with supply pressure and rounded corner radius,and is nonlinear as a quadratic concave function with annular clearance.The leakage flow rate of the annular clearance and the rounded corner varies with the valve opening in an invariable−nonlinear−linear trend.A test rig system of leakage behavior at null position of the HESV was built to confirm the validity of the numerical model,which agrees well with the conducted experimental study. 展开更多
关键词 high-pressure electro-pneumatic servo valve CLEARANCE leakage flow rate null position
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